Chang Jong-Soo, Seok Heon, Kwon Taeg-Kyu, Min Do Sik, Ahn Bong-Hyun, Lee Young Han, Suh Ju-Won, Kim Jong-Woo, Iwashita Shintaro, Omori Akira, Ichinose Sachiyo, Numata Osamu, Seo Jeong-Kon, Oh Yong-Seok, Suh Pann-Ghill
Department of Life Science, College of Natural Science, Daejin University, Kyeonggido 487-711, Korea.
J Biol Chem. 2002 May 31;277(22):19697-702. doi: 10.1074/jbc.M111206200. Epub 2002 Mar 8.
The pleckstrin homology (PH) domain is a small motif for membrane targeting in the signaling molecules. Phospholipase C (PLC)-gamma1 has two putative PH domains, an NH(2)-terminal and a split PH domain. Here we report studies on the interaction of the PH domain of PLC-gamma1 with translational elongation factor (EF)-1alpha, which has been shown to be a phosphatidylinositol 4-kinase activator. By pull-down of cell extract with the glutathione S-transferase (GST) fusion proteins with various domains of PLC-gamma1 followed by peptide sequence analysis, we identified EF-1alpha as a binding partner of a split PH domain of PLC-gamma1. Analysis by site-directed mutagenesis of the PH domain revealed that the beta2-sheet of a split PH domain is critical for the interaction with EF-1alpha. Moreover, Dot-blot assay shows that a split PH domain specifically binds to phosphoinositides including phosphatidylinositol 4-phosphate and phosphatidylinositol 4, 5-bisphosphate (PIP(2)). So the PH domain of PLC-gamma1 binds to both EF-1alpha and PIP(2). The binding affinity of EF-1alpha to the GST.PH domain fusion protein increased in the presence of PIP(2), although PIP(2) does not bind to EF-1alpha directly. This suggests that EF-1alpha may control the binding affinity between the PH domain and PIP(2). PLC-gamma1 is substantially activated in the presence of EF-1alpha with a bell-shaped curve in relation to the molar ratio between them, whereas a double point mutant PLC-gamma1 (Y509A/F510A) that lost its binding affinity to EF-1alpha shows basal level activity. Taken together, our data show that EF-1alpha plays a direct role in phosphoinositide metabolism of cellular signaling by regulating PLC-gamma1 activity via a split PH domain.
普列克底物蛋白同源(PH)结构域是信号分子中用于膜靶向的一个小基序。磷脂酶C(PLC)-γ1有两个假定的PH结构域,一个位于氨基末端,另一个是分裂型PH结构域。在此,我们报告了关于PLC-γ1的PH结构域与翻译延伸因子(EF)-1α相互作用的研究,EF-1α已被证明是一种磷脂酰肌醇4-激酶激活剂。通过用带有PLC-γ1各个结构域的谷胱甘肽S-转移酶(GST)融合蛋白下拉细胞提取物,随后进行肽序列分析,我们确定EF-1α是PLC-γ1分裂型PH结构域的一个结合伴侣。对PH结构域进行定点诱变分析表明,分裂型PH结构域的β2折叠对于与EF-1α的相互作用至关重要。此外,斑点印迹分析表明,分裂型PH结构域特异性结合包括磷脂酰肌醇4-磷酸和磷脂酰肌醇4,5-二磷酸(PIP₂)在内的磷酸肌醇。因此,PLC-γ1的PH结构域同时与EF-1α和PIP₂结合。尽管PIP₂不直接与EF-1α结合,但在PIP₂存在的情况下,EF-1α与GST.PH结构域融合蛋白的结合亲和力增加。这表明EF-1α可能控制PH结构域与PIP₂之间的结合亲和力。在EF-1α存在的情况下,PLC-γ1以钟形曲线相对于它们之间的摩尔比被显著激活,而失去与EF-1α结合亲和力的双点突变体PLC-γ1(Y509A/F510A)表现出基础水平的活性。综上所述,我们的数据表明,EF-1α通过分裂型PH结构域调节PLC-γ1活性,在细胞信号转导的磷酸肌醇代谢中发挥直接作用。